POWER7-IH网络性能瓶颈分析

D. Kerbyson, K. Barker
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引用次数: 16

摘要

在这项工作中,我们提供了IBM小型POWER7-IH处理系统中通信网络的早期性能分析。使用一组通信微基准,我们量化了系统中不同峰值性能特征的可用通信链路的可实现带宽。我们还确定了通信网络中的瓶颈,并表明单个节点可以注入网络的带宽远远小于IBM集线器芯片可用的带宽,集线器芯片充当节点的网卡,同时也是P7-IH网络的一个组成部分。使用代表许多具有常规通信模式的科学应用程序中的活动的通信模式,我们展示了P7-IH上的默认任务到核心分配如何在大多数情况下实现次优性能。我们还表明,当使用对角循环分配时,正如在这项工作中开发的那样,考虑到网络拓扑和路由策略,通信性能可以提高高达75%。我们期望在更大的P7-IH系统上通信性能有更大的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing the Performance Bottlenecks of the POWER7-IH Network
In this work we provide an early performance analysis of the communication network in a small-scale POWER7-IH processing system from IBM. Using a set of communication micro-benchmarks we quantify the achievable bandwidth of the communication links available in the system that differ in their peak performance characteristics. We also identify the bottlenecks within the communication network and show that the bandwidth a single node can inject into the network is considerably less than the bandwidth available to the IBM hub chip, that acts as a NIC to the node as well as being an integral part of the P7-IH network. Using a communication pattern that is representative of activities in many scientific applications that have regular communication patterns, we show how the default task-to-core assignment on the P7-IH achieves sub-optimal performance in most cases. We also show that when using a diagonal-cyclic assignment, as developed in this work that takes into account the network topology as well as routing strategy, the communication performance can be improved by up to 75%. We expect even greater improvements in the communication performance on larger P7-IH systems.
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